Home
Class 12
PHYSICS
10 gm of ice cubes at 0^(@)"C" are rel...

10 gm of ice cubes at `0^(@)"C"` are released in a tumbler (water equivalent 55 g) at `40^(@)"C"`. Assuming that negligible heat is taken from the surroundings, the temperature of water in the tumbler becomes nearly` "(L = 80 cal/g)"`

A

`31^(@)C`

B

`21.5^(@)C`

C

`19^(@)C`

D

`15^(@)C`

Text Solution

Verified by Experts

Promotional Banner

Topper's Solved these Questions

  • HEAT AND THERMAL EXPANSION

    PHYSICS GALAXY - ASHISH ARORA|Exercise ADVANCE MCQs WITH ONE OR MORE OPTIONIS CORRECT|24 Videos
  • HEAT AND THERMAL EXPANSION

    PHYSICS GALAXY - ASHISH ARORA|Exercise UNSOLVED NUMRICAL PROBLEMS FOR PREPARATION OF NSEP, INPhO & IPhO|82 Videos
  • HEAT AND THERMAL EXPANSION

    PHYSICS GALAXY - ASHISH ARORA|Exercise CONCEPTUAL MCQs SINGLE OPTION CORRECT|15 Videos
  • GEOMETRICAL OPTICS

    PHYSICS GALAXY - ASHISH ARORA|Exercise Unsolved Numerical Problems|107 Videos
  • HEAT TRANSFER

    PHYSICS GALAXY - ASHISH ARORA|Exercise Unsolved Numerical Problems for Preparation of NSEP,INPhO&IPhO|66 Videos

Similar Questions

Explore conceptually related problems

An 18-g ice cube (at 0^(@)C ) is dropped into a glass containing 200 g of water at 25^(@)C . If there is negligible heat exchange with the glass, what is the temperature after the ice melts?

In a container of negligible heat capacity 200 gm ice at 0^(@) C and 100 gm steam at 100^(@) C are added to 200 gm of water that has temperature 55^(@) C. Assume no heat is lost to the surroundings and the pressure in the container is constant of 1.0atm (L_(f)=80 cal//gm,L_(v)=540cal//gm, s_(w)=1 cal//gm^(@)C) At the final temperature, mass os the total water present in the system, is

In a container of negligible heat capacity 200 gm ice at 0^(@) C and 100 gm steam at 100^(@) C are added to 200 gm of water that has temperature 55^(@) C. Assume no heat is lost to the surroundings and the pressure in the container is constant of 1.0atm (L_(f)=80 cal//gm,L_(v)=540cal//gm, s_(w)=1 cal//gm^(@)C) What is the final temperature of the system ?

In a container of negligible heat capacity 200 gm ice at 0^(@) C and 100 gm steam at 100^(@) C are added to 200 gm of water that has temperature 55^(@) C. Assume no heat is lost to the surroundings and the pressure in the container is constant of 1.0atm (L_(f)=80 cal//gm,L_(v)=540cal//gm, s_(w)=1 cal//gm^(@)C) Amount of the steam left in the system, is equal to

4 gm of steam at 100^(@)C is added to 20 gm of water at 46^(@)C in a container of negligible mass. Assuming no heat is lost to surrounding, the mass of water in container at thermal equilibrium is. Latent heat of vaporisation = 540 cal//gm . Specific heat of water =1 cal//gm-^(@)C .

450 g water at 40^(@)C was kept in a calorimeter of water equivalent 50 g 25 g ice at 0^(@)C is added and simultaneously 5 g steam at 100^(@)C was passed to the calorimeter. The final temperature of the calorimeter. Will be (L_(ice)=80 cal // g.L_(steam) =540cal//g)

Four cubes of ice at -10^(@)C each one gm is taken out from the refrigerator and are put in 150 gm of water at 20^(@)C . The temperature of water when thermal equilibrium is attained. Assuming that no heat is lost to the outside and water equivalent of contaner is 46 gm . (Specific heat capacity of water = 1 cal//gm-^(@)C , Specific heat capacity of ice =0.5 cal//gm-^(@)C , Latent heat of fusion of ice = 80 cal//gm-^(@)C )

In a container of negligible heat capacity, 200 gm ice at 0^(@)C and 100gm steam at 100^(@)C are added to 200 gm of water that has temperature 55^(@)C . Assume no heat is lost to the surrpundings and the pressure in the container is constant 1.0 atm . (Latent heat of fusion of ice =80 cal//gm , Latent heat of vaporization of water = 540 cal//gm , Specific heat capacity of ice = 0.5 cal//gm-K , Specific heat capacity of water =1 cal//gm-K) What is the final temperature of the system ?

In a container of negligible heat capacity, 200 gm ice at 0^(@)C and 100gm steam at 100^(@)C are added to 200 gm of water that has temperature 55^(@)C . Assume no heat is lost to the surrpundings and the pressure in the container is constant 1.0 atm . (Latent heat of fusion of ice =80 cal//gm , Latent heat of vaporization of water = 540 cal//gm , Specific heat capacity of ice = 0.5 cal//gm-K , Specific heat capacity of water =1 cal//gm-K) Amount of the steam left in the system, is equal to

PHYSICS GALAXY - ASHISH ARORA-HEAT AND THERMAL EXPANSION-NUMERICAL MCQs SINGLE OPTIONS CORRECT
  1. A solid occupies 1000ml at 20^(@)C. Its volume becomes 1016.2ml at 320...

    Text Solution

    |

  2. A clock with a metal pendulum beating sconds keeps correct time at 0^(...

    Text Solution

    |

  3. A clock which keeps correct time at 25^(@)C has a pendulum made of a m...

    Text Solution

    |

  4. A faulty thermometer has its fixed points marked as 5^(@) and 95^(@). ...

    Text Solution

    |

  5. At what temperature (in ^(@)C, the fahrenheit and celsius scale gives ...

    Text Solution

    |

  6. 0.93 watt - hour of energy is supplied to a block of ice weighing 10 g...

    Text Solution

    |

  7. The coefficient of linear expansion of iron is 0.000011.^(@)C. An iron...

    Text Solution

    |

  8. A uniform metal rod of 2mm^(2) area of cross section is heated from 0^...

    Text Solution

    |

  9. A beaker contains 200 g of water. The heat capacity of the beaker is e...

    Text Solution

    |

  10. A sphete of deamrter 7.0 cm and mass 266.5 g float in a bath of liquid...

    Text Solution

    |

  11. The real coefficient of volume expansion of glycerine is 0.000597 per...

    Text Solution

    |

  12. 10 gm of ice at – 20^(@)C is added to 10 gm of water at 50^(@)C. Speci...

    Text Solution

    |

  13. 10 gm of ice cubes at 0^(@)"C" are released in a tumbler (water equi...

    Text Solution

    |

  14. Steam at 100^@C is passed into 1.1 kg of water contained in a calorime...

    Text Solution

    |

  15. The temperature of equal masses of three different liquids A,B and C a...

    Text Solution

    |

  16. Hailstone at 0^@C from a height of 1 km on an insulating surface conve...

    Text Solution

    |

  17. If the readin of the Reaumer scale is nunmerically less than that of C...

    Text Solution

    |

  18. About 5g of water at 30^(@)C and 5g of ice at -20^(@)C are mixed toget...

    Text Solution

    |

  19. One gram of ice at 0^(@)C is added to 5 gram of water at 10^(@)C. If t...

    Text Solution

    |

  20. 1 g of ice at 0^@C is mixed with 1 g of steam at 100^@C. After thermal...

    Text Solution

    |